For Exercises 33-48, solve the system if possible by using Cramer's rule. If Cramer's rule does not apply, solve the system by using another method. (See Examples 6-8) − 5 x − 6 y + 8 z = 1 2 x + y − 4 z = 5 3 x − 4 y − z = − 2
For Exercises 33-48, solve the system if possible by using Cramer's rule. If Cramer's rule does not apply, solve the system by using another method. (See Examples 6-8) − 5 x − 6 y + 8 z = 1 2 x + y − 4 z = 5 3 x − 4 y − z = − 2
Solution Summary: The author explains how to calculate the solution of the system of equations using Cramer's rule if possible or use some other method.
For Exercises 33-48, solve the system if possible by using Cramer's rule. If Cramer's rule does not apply, solve the system by using another method. (See Examples 6-8)
−
5
x
−
6
y
+
8
z
=
1
2
x
+
y
−
4
z
=
5
3
x
−
4
y
−
z
=
−
2
In the xy-plane, the graphs of the linear
function and the exponential function E
both pass through the points (0,2) and (1,6)
The function f is given by
f(x) = L(x) - E(x). What is the maximum
value of f?
A
0.007
B
0.172
C
0.540
D 1.002
n
3
5
ст
7
ап
85
95
105
The table gives values of an arithmetic
sequence an for selected values of n. Which
of the following linear functions is
αρ
constructed from the initial value an (with
n = 0) and common difference of the
sequence?
A
f(x) = 70+5x
B
f(x) = 70+10x
C
f(x) = 75+5x
D
f(x) = 75+10x
3. Submit answer Practice similar
Calculate the integral approximation Se for
So
dz.
L-de
4
1.
Submit answer
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